State Key Laboratory of Ultra-Precision Machining Technology, Department of Industrial and Systems Engineering, The Hong Kong Polytechnic University, Kowloon, Hong Kong 999077, China.
Department of Building Services Engineering, The Hong Kong Polytechnic University, Kowloon, Hong Kong 999077, China.
ACS Nano. 2020 May 26;14(5):6213-6221. doi: 10.1021/acsnano.0c02250. Epub 2020 Apr 24.
The 2019 coronavirus outbreak (COVID-19) is affecting over 210 countries and territories, and it is spreading mainly by respiratory droplets. The use of disposable surgical masks is common for patients, doctors, and even the general public in highly risky areas. However, the current surgical masks cannot self-sterilize in order to reuse or be recycled for other applications. The resulting high economic and environmental costs are further damaging societies worldwide. Herein, we reported a unique method for functionalizing commercially available surgical masks with outstanding self-cleaning and photothermal properties. A dual-mode laser-induced forward transfer method was developed for depositing few-layer graphene onto low-melting temperature nonwoven masks. Superhydrophobic states were observed on the treated masks' surfaces, which can cause the incoming aqueous droplets to bounce off. Under sunlight illumination, the surface temperature of the functional mask can quickly increase to over 80 °C, making the masks reusable after sunlight sterilization. In addition, this graphene-coated mask can be recycled directly for use in solar-driven desalination with outstanding salt-rejection performance for long-term use. These roll-to-roll production-line-compatible masks can provide us with better protection against this severe virus. The environment can also benefit from the direct recycling of these masks, which can be used for desalinating seawater.
2019 年冠状病毒爆发(COVID-19)正在影响超过 210 个国家和地区,它主要通过呼吸道飞沫传播。在高风险地区,一次性医用口罩通常被患者、医生甚至普通大众使用。然而,目前的医用口罩不能自行消毒以重复使用或回收用于其他应用。由此产生的高经济和环境成本正在进一步破坏全球社会。在此,我们报告了一种独特的方法,可用于对市售医用口罩进行功能化处理,使其具有出色的自清洁和光热性能。开发了一种双模式激光诱导正向转移方法,用于将少层石墨烯沉积到低熔点无纺口罩上。处理后的口罩表面呈现超疏水状态,使进入的水滴滴迅速弹开。在阳光照射下,功能口罩的表面温度可迅速升高到 80°C 以上,经阳光消毒后可重复使用。此外,这种涂有石墨烯的口罩可直接回收用于太阳能驱动的海水淡化,具有出色的长期耐盐性能。这些可兼容卷对卷生产线的口罩可以为我们提供更好的保护,防止这种严重的病毒。环境也可以从这些口罩的直接回收中受益,这些口罩可用于淡化海水。